A new lignan dimer, bilariciresinol (1), was isolated from the leaves of Mallotus philippensis, along with platanoside (2), isovitexin (3), dihydromyricetin (4), bergenin (5), 4-O-galloylbergenin (6), and pachysandiol A (7). Their structures were elucidated by spectroscopic experiments including 1D and 2D NMR and FTICR-MS.
SaijoR, NonakaG, NishiokaI. (1989) Tannins and related compounds. LXXXIV. Isolation and characterization of five new hydrolyzable tannins from the bark of Mallotus japonicus. Chemical & Pharmaceutical Bulletin, 37, 2063–2070;
SomyoteS, JirapornT, SomchaiP, KanithaJ, PalangponK. (2001) D:A Friedo-oleanane lactones from the stems of Mallotus repandus. Journal of Natural Products, 64, 569–571;
4.
ArisawaM. (2003) Constituents of the pericarps of Mallotus japonicus (Euphobiaceae). Yakugaku Zasshi, 123, 217–224;
5.
MaJ, JonesSH, HechtSM. (2004) A coumarin from Mallotus resinosus that mediates DNA cleavage. Journal of Natural Products, 67, 1614–1616;
6.
DaikonyaA, KatsukiS, KitanakaS. (2004) Antiallergic agents from natural sources 9. Inhibition of nitric oxide production by novel chalcone derivatives from Mallotus philippensis (Euphorbiaceae). Chemical & Pharmaceutical Bulletin, 52, 1326–1329;
TanakaR, NakataT, YamaguchiC, WadaS, YamadaT, TokudaH. (2008) Potential antitumor-promoting activity of 3α-hydroxy-D:A-friedooleanan-2-one from the stem bark of Mallotus philippensis. Planta Medica, 74, 413–416;
9.
XuJF, FengZM, LiuJ, ZhangPC. (2008) New hepatoprotective coumarinolignoids from Mallotus apelta. Chemistry & Biodiversity, 5, 591–597;
10.
TabataH, KatsubeT, TsumaT, OhtaY, ImawakaN, UtsumiT. (2008) Isolation and evaluation of the radical-scavenging activity of the antioxidants in the leaves of an edible plant, Mallotus japonicus. Food Chemistry, 109, 64–71.
11.
MinhCV, KiemPV, NamNH, HuongHT, LeeJJ, KimYH. (2004) Chemical investigations and biological studies of Mallotus apelta. V. Flavonoids and other compounds from Mallotus apelta. Tap Chi Hoa Hoc, 42, ii–iii;
12.
KiemPV, MinhCV, HuongHT, NamNH, LeeJJ, KimYH. (2004) Pentacyclic triterpenoids from Mallotus apelta. Archives of Pharmacal Research, 27, 1109–1113;
13.
MinhCV, KiemPV, NamNH, HuongHT, LeeJJ, KimYH. (2005) Chemical investigations and biological studies of Mallotus apelta. IV. Constituents with inhibitory activity against NFAT transcription and NF-κB activation from Mallotus apelta. Tap Chi Hoa Hoc, 43, 773–777; KiemPV, DangNH, BaoHV, HuongHT, MinhCV, HuongLM, LeeJJ, KimYH. (2005) New cytotoxic benzopyrans from the leaves of Mallotus apelta. Archives of Pharmacal Research, 28, 1131–1134;
14.
CeslineR, VanNTH, LucP, BiekeD, YvanVH, MinhCV, JoëlleQL. (2009) Polyphenols isolated from antiradical extracts of Mallotus metcalfianus. Phytochemistry, 70, 86–94;
15.
MinhCV, ThanhNTK, QuangTH, CuongNX, ThinNN, NamNH, YvanVH, JoëlleQL, KiemPV. (2009) Two new megastigmane sulphonoglucosides from Mallotus anisopodus. Natural Product Communications, 4, 889–892.
16.
HoPH. (2003) An Illustrated Flora of Vietnam.Tre Publishing House, Ho Chi Minh City, Vietnam, Vol II, 251;
17.
MoiLD, HoiTM, HuyenDD, ThaiTH, BanNK. (2005) Plant resources of Vietnam - Bioactive plants.Agriculture Publishing House, Hanoi, Vietnam, Vol I, 55–57;
18.
ThinNN. (2007) Taxonomy of Euphorbiaceae in Vietnam.Vietnam National University Publishing House, Hanoi, Vietnam, 193–194.
AbeF, YamauchiT, WanASC. (1988) Lignans related to olivil from Genus cerbera (Cerbera. VI). Chemical & Pharmaceutical Bulletin, 36, 795–799.
21.
KaouadjiM. (1990) Acylated and non-acylated kaempferol monoglycosides from Platanus acerifolia buds. Phytochemistry, 29, 2295–2297.
22.
RamarathnamN, OsawaT, NamikiM, KawakishiS. (1989) Chemical studies on novel rice hull antioxidants. 2. Identification of isovitexin, a C-glycosyl flavonoid. Journal of Agricultural and Food Chemistry, 37, 316–319.
23.
JeonSH, ChunW, ChoiYJ, KwonYS. (2008) Cytotoxic constituents from the bark of Salix hulteni. Archives of Pharmacal Research, 31, 978–982.
24.
SaijoR, NonakaGI, NishiokaI. (1990) Gallic acid esters of bergenin and norbergenin from Mallotus japonicus. Phytochemistry, 29, 267–270.
25.
QuL, ChenX, LuJ, YuanJ, ZhaoY. (2005) Chemical component of Leptopus chinensis. Chemistry of Natural Compounds, 41, 565–568.